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Alzheimer Precursor Protein Interaction with the Nogo-66 Receptor ReducesAmyloid-β Plaque Deposition

机译:阿尔茨海默病前体蛋白与Nogo-66受体的相互作用降低淀粉样β斑块沉积

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摘要

Pathophysiologic hypotheses for Alzheimer’s disease (AD) are centered on the role of the amyloid plaque Aβ peptide and the mechanism of its derivation from the amyloid precursor protein (APP). As part of the disease process, an aberrant axonal sprouting response is known to occur near Aβ deposits. A Nogo to Nogo-66 receptor (NgR) pathway contributes to determining the ability of adult CNS axons to extend after traumatic injuries. Here, we consider the potential role of NgR mechanisms in AD. Both Nogo and NgR are mislocalized in AD brain samples. APP physically associates with the NgR. Overexpression of NgR decreases Aβ production in neuroblastoma culture, and targeted disruption of NgR expression increases transgenic mouse brain Aβ levels, Aβ plaque deposition, and dystrophic neurites. Infusion of a soluble NgR fragment reduces Aβ levels, amyloid plaque deposits, and dystrophic neurites in a mouse transgenic AD model. Changes in NgR level produce parallel changes in secreted APPα and Aβ, implicating NgR as a blocker of secretase processing of APP. The NgR provides a novel site for modifying the course of AD and highlights the role of axonal dysfunction in the disease.
机译:阿尔茨海默氏病(AD)的病理生理假说集中于淀粉样蛋白斑块Aβ肽的作用及其从淀粉样蛋白前体蛋白(APP)衍生的机制。作为疾病过程的一部分,已知在Aβ沉积物附近发生异常的轴突发芽反应。从Nogo到Nogo-66受体(NgR)的途径有助于确定成年CNS轴突在创伤后的伸展能力。在这里,我们考虑NgR机制在AD中的潜在作用。 Nogo和NgR在AD脑样本中都定位不正确。 APP与NgR物理关联。 NgR的过表达减少了神经母细胞瘤培养物中Aβ的产生,而NgR表达的定向破坏会增加转基因小鼠大脑的Aβ水平,Aβ斑块沉积和营养不良的神经突。输注可溶性NgR片段可降低小鼠转基因AD模型中的Aβ水平,淀粉样蛋白斑块沉积和营养不良的神经突。 NgR水平的变化会在分泌的APPα和Aβ中产生平行变化,暗示NgR是APP分泌​​酶加工的阻滞剂。 NgR提供了修饰AD病程的新位点,并突出了轴突功能障碍在疾病中的作用。

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